Showing posts with label ICT Education. Show all posts
Showing posts with label ICT Education. Show all posts

Tuesday, February 22, 2022

Incident with patrol aircraft following hypothetical script

HQ JOC storyboard of PLA-N ships, in the Arafura Sea.

In 2016 I presented a hypothetical for IT Ethics at ANU. This was a fictional incident involving a maritime surveillance aircraft. The question for the students was what, as an IT professional, what military response they could participate in. This scenario became real last week when an Australian P-8A Poseidon aircraft reported being targeted by a laser from a Chinese warship, just north of Australia. Fortunately the real situation did not escalate, unlike the hypothetical:

The real report:

"On 17 February 2022, an Australian Maritime Patrol Aircraft P-8A Poseidon detected a laser illuminating the aircraft while it was conducting a routine surveillance flight over Australia’s northern approaches.

The laser was detected as emanating from a People’s Liberation Army – Navy (PLA-N) vessel. Illumination of the aircraft by the Chinese vessel is a serious safety incident. ... sonobuoys were used after the incident ... ahead of the PLA-N vessel. ..." 

From: Chinese ship lasing of P-8A Poseidon on 17 February 2022, Australian Department of Defence, 22 February 2022.

My fictional report:

"At 02:20 Zulu, 1 April 2017, one of our maritime surveillance aircraft was reported missing. The aircraft was conducting a freedom of navigation flyover ... signals from a fire control radar ... aircraft's flares and electronic countermeasures were activated ... "

From: Briefing by Cyberspace Operations Wing at Headquarters Joint Operations Command (COW/HQJOC), 12:30 Zulu 1 April 2017 (Notional For Exercise Only)


Tuesday, February 23, 2016

Cyberwar: Hypothetical for Teaching ICT Ethics


Last week I attended a series of seminars as part of the Securing our Future in Cyberspace Conference hosted by the Australian National University. This gave me inspiration for new material to teach ICT Ethics at ANU. Here is a draft. Comments are welcome:
Unclassified. All Scenario Data is Notional and For Exercise Only

Cyberwar: Hypothetical Scenario for Teaching ICT Ethics

Briefing by Cyberspace Operations Wing at Headquarters Joint Operations Command (COW/HQJOC), 12:30 Zulu 1 April 2017:

RAAF P-3 Orion Aircraft, photo by 'Timothy' CC BY 2.0, via Wikimedia Commons
Maritime Surveillance Aircraft
"At 02:20 Zulu, 1 April 2017, one of our maritime surveillance aircraft was reported missing. The aircraft was conducting a freedom of navigation flyover on one of the reefs, subject to claim by several nations. The last recorded radio transcripts are:
  • OPFOR: "Unidentified military aircraft, you are entering a restricted zone. Turn now to avoid unfortunate consequences.
  • OURFOR: We are over international waters, in accordance with accepted law.
  • OPFOR: Unidentified military aircraft, turn back now. This is your last warning.
  • OURFOR: Mayday, Mayday, Mayday, this is Surveillance One Zero Five Charlie Delta, one zero zero kilometers South East of ... " [Transmission ends]
RSAF G550-AEW Aircraft, photo by 'Alert5', CC BY-SA 4.0, via Wikimedia Commons
SIGINT Aircraft
Intercepts from our new signals intelligence (SIGINT) aircraft, which was on a test flight in the area, reported signals from a fire control radar, shortly before communication was lost.

Chinese HT-233 SAM, photo by Max Smith, Public domain, via Wikimedia Commons
SAM Fire Control Radar
The radar was in test mode, however, the older radar warning receiver in our maritime surveillance aircraft is not sophisticated enough to distinguish a test signal from a real attack.

Our aircraft's flares and electronic countermeasures were activated. This may have been mistaken for the launch of a cruse missile, which our aircraft can carry (but was not).
Chinese HQ-9 SAM TEL, Photo by Jian Kang, CC BY 3.0, via Wikimedia Commons
SAM Transporter Erector Launcher
A surface-to-air missile (SAM)  was launched and our aircraft appears to have crashed while maneuvering to avoid the missile. The crew have been rescued by a civilian vessel, but have not yet been debriefed.

The media are reporting that one of our unarmed aircraft has been shot down and the Government has asked for military options to respond. The best kinetic solution is a precision air attack on the missile batteries, guided by special forces landed from a submarine, which is already on station. However, the government has also asked for a cyber option which would disrupt the opposing force's systems, show our national resolve, but avoid casualties.

It is proposed to target the opposing force's electronic control systems. This is expected to disable electrical systems and cause some local electrical fires. Our intelligence assets in the area will arrange for video of the damage to be posted to social media, for maximum news value. We will be working with civilian government personnel with special expertise, to prepare a human factor attack on their Internet of Things (IoT).

Unclassified. All Scenario Data is Notional and For Exercise Only

What Will You Do?

Suppose you are a Senior Incident Responder (SRI) in the Digital Protection Group (DPG) at the Digital Transformation Office (DTO) of the Government. Your job is protecting the whole of government website. Recently you detected a sophisticated attack and boasted "we could turn that attack back on them!". So you are now asked to do just that, despite being a civilian employee.

You are reasonably sure you can mount a cyber-attack which will have the desired political effect: it will disrupt systems of the opposing force enough to cause public embarrassment to their government, with minimum risk of casualties. But can you be sure its effects will be confined to government systems, or to that country? What if the attack shuts down hospital in their country, or across the world?

Is it ethical to be involved in planning such an attack? Would your answer be different, if you are a civilian contractor rather than a government employee, or if you were a military officer? Note that the hypothetical scenario does not say what country is planning the attack, or who they are attacking: does it make a difference to your answer who is attacking who?

Note that you are not asked to become an expert on the Geneva Conventions or the laws of war. However, as an professional you need to be aware of the ethical implications of what you choose to do, or not do, in your work.

The Australian Computer Society's Code of Professional Conduct and Professional Practice, incorporating a code of ethics which requires all members to act with professional responsibility and integrity. How does that code apply to cyberwar? In decreasing order of priority, the ACS Code of Ethics lists:
  1. The Public Interest
  2. Integrity
  3. Confidentiality
  4. Objectivity and Independence
  5. Competence
  6. Keeping Up-To-Date
  7. Subordinates
  8. Responsibility to your Client
  9. Promoting Information Technology
  10. The Image of the Profession and the Society
There will be a question on this topic in the examination.

Discussion

The hypothetical scenario presented is based on real events. In 2015 an Australian military aircraft was challenged by radio while on patrol (Wroe & Wen, 2015). In 2010 the "Stuxnet" computer worm was released, apparently designed to destroy a nuclear processing facility, but spread world wide (Langner, 2011). In 2014 five military officers were charged with hacking to obtain trade secrets (Wechsler, 2016).

Henschke (p. 17, 2014) points out that "the purpose of a cyberweapon is to attack an information system in order to perpetrate harm". Ford (p. 7, 2014) provide a diagram to help decide how to respond to a critical infrastructure/high impact attack. This chart could equally used to plan an attack for maximum impact.

Screen image of the web page for the fictional Concinna Day Care Centre
Fictional day care centre
(
Page & Jean, 2013)
Cyber-warfare attacks do not necessarily need sophisticated computer code. Human factor attack, where someone within the organization being attacked is tricked into providing information or access. In 2013 invitations to apply to a supposed government endorsed child care center were sent to employees of an intelligence agency. An attached form was designed to collect personal information which could be used for later attacks (Page & Jean, 2013).

References

Ford, S. (2014). Warfare, cyberweapons and morality. In M. Keelty, A. Henschke, N. Evans, S. Ford & A Gastineau & L. West, Cybersecurity: mapping the ethical terrain. National Security College (ANU). Retrieved from http://nsc.anu.edu.au/documents/ocassional-paper-6-cyber-ethics.pdf
Henschke, A. (2014). A decision-making procedure for responding to cyber-attacks. In M. Keelty, A. Henschke, N. Evans, S. Ford & A Gastineau & L. West, Cybersecurity: mapping the ethical terrain. National Security College (ANU). Retrieved from http://nsc.anu.edu.au/documents/ocassional-paper-6-cyber-ethics.pdf
Langner, R. (2011). Stuxnet: Dissecting a cyberwarfare weapon. Security & Privacy, IEEE, 9(3), 49-51. Retrieved from http://ieeexplore.ieee.org/xpls/icp.jsp?arnumber=5772960
Page, F., & Jean, P. (2013, April 16). Free childcare scam aimed at intelligence staff. Sydney Morning Herald. Retrieved from: http://www.smh.com.au/it-pro/security-it/free-childcare-scam-aimed-at-intelligence-staff-20130415-2hwhq.html
Wechsler, P. (2016). Issue: Cybersecurity Short Article: China's Unit 61398 Pulled From the Shadows. Retrieved from http://businessresearcher.sagepub.com/sbr-1775-98146-2715481/20160201/chinas-unit-61398-pulled-from-the-shadows?download=pdf
Wroe, D., & Wen, P. (2015, December 15). South China Sea: Australia steps up air patrols in defiance of Beijing. Sydney Morning Herald. Retrieved from: http://www.smh.com.au/federal-politics/political-news/south-china-sea-australia-steps-up-air-patrols-in-defiance-of-beijing-20151215-gloc2e.html

Videos

Department of Defence. (2014, March 18) Royal Australian Air Force AP-3C Orion maritime patrol aircraft. Department of Defence. Retrieved from https://video.defence.gov.au/play/3267#

This presentation contains images that were used under a Creative Commons License. Click here to see the full list of images and attributions: https://link.attribute.to/cc/1584914

Thursday, February 11, 2016

Resources for Teaching ICT in Schools

Joel Cowey talked about the CSIRO ICT in Schools Program at the Australian Computer Society in Canberra, 10th February 2016. Joel explained how the program (ICTiS) partners volunteer ICT professionals and with school teachers who are teaching the new Australian Digital Technologies Curriculum. He showed some hardware used in schools for teaching ICT, as well as pointing out useful online resources. Here are some links:

For IT Professionals and Teachers:


  1. CSIRO ICT in Schools Registration
  2. InteACT ACT IT Teachers Association
  3. Australian Digital Technologies Curriculum
  4. Free Online Course for Teaches on the Digital Curriculum
  5. Teach for Australia Program for graduates to take up teaching
  6. Double degree for science teaching from ANU and University of Canberra
  7. Comp8440 ANU Free and Open Source Software Development

Activities for Students:


Hardware for teaching IT:


  1. Bee Bot a teaching robot for young students
  2. Arduino Low cost single board computer
  3. Arduino LilyPad Low cost computer designed to sew into fabric 
  4. Makey Makey Game controller for kids

Tuesday, December 29, 2015

Technical Education is as Important As Business Skills


"75% of people lacking a technical education will believe made up quotes containing  spurious statistics" - Tom Worthington ;-)
More seriously, the ability to communicate, negotiate and lead is important, but it is also necessary to have at least basic technical knowledge. Being able to lead will be of no use if people can fool you with such obvious nonsense as the often cited, supposed quote:
"85% of your financial success is due to your personality and ability to communicate, negotiate and lead. Shockingly, only 15% is due to technical knowledge." - Carnegie Institute of Technology
Variations of this appear in tens of thousands of publications. Jeff Lopez-Stuit traced it to a Forbes article by Keld Jensen  (2012):
"Research carried out by the Carnegie Institute of Technology shows that 85 percent of your financial success is due to skills in “human engineering,” your personality and ability to communicate, negotiate, and lead. Shockingly, only 15 percent is due to technical knowledge. "
Brian Austin traced this back to a 1918 work by the Carnegie Foundation. I was able to find the actual article (Mann, 1918), which does not support the proposition that technical knowledge is relatively unimportant. It is actually about how to improve technical education, which ensured the USA's economic success in the 20th century.

I suggest we need people who are trained in both technical and business skills. In particular there is great value in giving technical people some training in how to communicate and some understanding of business. One way to do this is with "innovation" programs, where the technical and business students are required to work together.

Reference

Mann, C. R. (1918). A study of engineering education. Bulletin, 11. Retrieved from: http://web.mit.edu/~jwk/www/docs/Mann%201918%20Study_of_Engineering_Educ.pdf

Wednesday, December 23, 2015

CSIRO ICT in Schools program

Joel Cowey will speak on the CSIRO ICT in Schools Program (RSVP) at the Australian Computer Society in Canberra, 5pm, 10th February 2016.
ICT in Schools, a partnership program (ICTiS) creates and supports ongoing, flexible partnerships between volunteer ICT professionals and teachers, showcasing real world, contemporary ICT in the classroom.
ICTiS supports implementation of the Australian Curriculum: Digital Technologies and the ICT capabilities and how to fully utilise the knowledge, skills and capacity of ICT volunteer. Explore what makes effective, successful partnerships and where the program is going in the future.

Joel Cowey works in CSIRO Education and Outreach and coordinates the ICT in Schools a partnership program element. He sees the best way of improving ICT literacy in the community is through high quality STEM education and to ensure students get the opportunity to learn about STEM subjects at school.
Joel has spent 6 years as a purely ICT geek working for the Departments of Defence, Environment, and Education, 23 years as a teacher of science and ICT and three years as a science and IT education policy officer in the commonwealth Department of Education. There have been occasional stints tutoring IT at TAFE and university and time off for travel, study and parenting.

Sunday, September 20, 2015

Technologies Curriculum for Australian Schools Endorsed by Education Ministers

The "Foundation to Year 10 Australian Curriculum: Technologies" was endorsed on Friday 18 September 2015 by all Australian State and Territory Ministers for Education for use in schools. The ministers met as the "Education Council" and appropriately the meeting was held by video conference. Unfortunately the Federal Government is providing a minimal $3.5M over four years to support teaching coding in schools. It also appears that state governments are unlikely to make the coordinated investment needed to introduce the new curriculum (training teachers, providing on-line materials and support). As a result schools will have to rely on voluntary work by groups such as Information Technology Educators ACT who recently held an excellent workshop in Canberra. Despite this volunteer work, it is likely Australia will slip further behind in its supply of STEM qualified workforce. This will result in a drop in exports in five to ten years time, when the qualified people needed to create new hi-tech companies and products will not be available. In addition Australia will have to pay to import technology curriculum materials.

Friday, September 11, 2015

Techniques for Teaching the Technologies Curriculum in Australian Schools

The Technologies Curriculum for Foundation to Year 10 in Australian Schools is expected to be formally approved on 18 September 2015. On Thursday I attended the Information Technology Educators ACT (InTEACT) workshop on how to teach the new curriculum. I attended presentations by CISCO and Intel and then hands-on exercise with Grok Learning's programming teaching materials.

CISCO emphasized that the courses at their "CISCO Networking Academy" were not just for training network engineers. As an example they have a course on "Entrepreneurship". What was not clear was how applicable these courses are to the new Technologies Curriculum, given it is for younger students. Also it was not clear if these were aligned with Australian educational requirements.

The Intel presentation did not start well with some claims in the corporate slides at the start lacking credibility. As an example a claim that less than 10% of the world's population had Internet access (the Intel figure I think was 2%) did not seem to match estimates of 40%.

Also a description of the Arduino compatible  Intel Galileo single board computer was a little confusing. Also what was not clear was that a Teacher’s guide to  the Intel Galileo was developed with Macquarie University (and so should me more than just a sales brochure). The guide is designed for the Australian Curriculum, with projects which also suit other Arduino compatible hardware. Unfortunately the PDF version of the guide is 15 Mbytes (a bit big). What was good was that there were several Intel education kits to try out.

Lastly I took part in a workshop run with Australian company, Grok Learning. We ran through two of their one hour coding exercises on "Frozen Fractals" (Python Turtle and Blockly Turtle). These are designed for an iPad, although I used them on a laptop. The exercise was to use "turtle graphics" to draw a snowflake, to learn about geometry and iteration. The two versions of the exercise used a visual programming language (Blockly) and one using Python.

The programming environment used will be familiar to those who have done one of the newer introduction to programming exercises at a university, based on the "Snap!" programming environment and UC Berkeley's "Beauty and Joy of Computing" (Harvey, 2012). The use of turtle graphics for teaching extends much further back, at least to the mid 1970s (Solomon & Papert, 1976). It is interesting to see that it has taken more than 40 years for the hardware to catch up with teaching ideas.

Grok's lesson screen shows a progress bar along the top, with circles representing information for the students and diamonds for tasks. About half the screen is devoted to lesson content, the other half has a window for entering code at the top and a window for results below. When I started the lesson the code window was only large enough for one line, but I found I could drag to make it larger.

Tasks in the progress bar are gray at the start, then turn amber when attempted and green when completed successfully. One minor problem is that it would be difficult to distinguish green and amber if the user can't distinguish color (or has a monochrome screen). However, it would not be difficult for Grok to provide a non-color indicator, to meet accessibility requirements.

To see how they went, a student first runs their code and then submits it for marking. The system shows the required behavior of the turtle and then overlays what the student's code does. One problem is, as with any automated test, the student's result must be identical to the expected result, even for irrelevant details. As an example, when asked to draw a square I left the turtle pointing a different direction to the model answer and so this was not marked as correct by the system. Also there were no helpful hints as what to do next, if your result was not correct.

Grok's implementation is only a few weeks old and they were still making some improvements. Overall the exercises worked well for teaching programming fundamentals. However, these exercises would only really be useful where the student was able to obtain help from a human tutor, such as in a classroom. On its own, for a distance education student, the exercises would be very frustrating. Even a certified computer professional, such as myself, would find it difficult. ;-)

The workshop was held in the Inspire Centre at the University of Canberra. This building was purpose built to teach teachers how technology can be incorporated into education and is the best expression of the hight tech classroom I have seen, anywhere in the world. The event started with seating arranged in theater mode (rows of chairs facing the front). I went out for a coffee in the foyer and by the time I came back the room had been rearranged: a folding wall had divided the room in two and one half was changed to group work around tables.

The Inspire Centre illustrates the sort of investment which needs to be made by Australian governments (and the non-government schools sector) to implement the Technologies Curriculum in Australian schools. While InTEACT's initiative in holding this workshop (and the contribution by companies involved) is to be commended, an investment of many hundreds of millions of dollars is needed for teacher training, equipment and curriculum development. That may sound a lot of money, but is minor compared to that spent on the previous "Building the Education Revolution" and laptops for schools programs. Unfortunately while it is relatively easy to get money for tangible hardware and buildings, it is more difficult to resources the more useful teacher training and course content which is needed for a real education revolution.

References


Harvey, B. (2012). The Beauty and Joy of Computing: Computer Science for Everyone. Proceedings of Constructionism 2012, 33-39. http://ftp.cs.berkeley.edu/~bh/BJC.pdf
Solomon, C. J., & Papert, S. (1976, June). A case study of a young child doing Turtle Graphics in LOGO. In Proceedings of the June 7-10, 1976, national computer conference and exposition (pp. 1049-1056). ACM. http://dx.doi.org/10.1145/1499799.1499945

Wednesday, September 9, 2015

Technologies Curriculum for Australian Schools Next Week

At the ACS Canberra Conference, Julie King, Curriculum Lead, Technology at ACRA, said she was expecting approval of the "Foundation to Year 10 Australian Curriculum: Technologies" by Australian education ministers on 18 September 2015. This is significant as these are the school years when students decide what they will do after school. I suggest that by directly supporting the implementation of the Technologies Curriculum, professional bodies, VET and university sectors can best encourage students to go on to ICT study and careers. One way to do that is for professions and HE to create on-line course content for use by schools. These materials would be best created in a way they can be used by teachers in the classroom, as well as being packaged for direct study by the students.

Tuesday, November 11, 2014

IT Support for University Education

Recently I was asked what were the hot issues with ICT and university education. In my view they are: supporting teacher education, mobile devices, e-portfolios, e-learning and bandwidth. The impediment to better use of ICT for education is not really a computer issue at all, it is training in how to teach for university lecturers and tutors. Most receive minimal training in classroom teaching and almost none in how to teach on-line. Universities rum some courses on how to use new educational software, but stop short of teaching the teaching techniques the software can support. Academics therefore try to implement their old classroom teaching online and wonder why the students are unhappy. The way out of this is to use the technology to teach technology based teaching. Academics can then experience the techniques while learning teaching.

In terms of real technology issues the major one is how to support mobile devices. The mainstream Learning management Systems (Blackboard and Moodle) were designed for desktop computers and their attempts at a mobile interface have been less than successful. The question then is if to persist with this or switch to new software, which likely will not support desktop devices well.

So far e-portfolios have been underused and under integrated in education at universities. Theses packages provide continuity between courses and can bridge course and thesis based forms of learning. But at present the link between the LMS and the e-portfolio packages are limited. Also universities need to change their program design to provide the flexibility they claim but do not deliver.

The basics of e-learning: formatting documents for online delivery and designing good assessment can tend to get forgot then. The LMS needs to be linked to an e-lrnarary which delivers electronic readings materials and videos.

Bandwidth needs to be conspired for students. New interactive web software is tending to use ten times as much bandwidth as older "classic" web screens. This can prevent access for students in remote locations (or just in some suburbs of Australian cities). The low bandwidth option needs to be retained.



Monday, June 16, 2014

Use ICT to Attract and Train ICT Teachers

The Australian Council of Deans of Information and Communications Technology (ACDICT), have expressed concern at the lack of ICT trained teachers in Australian schools ("ICT teaching deficit is severe", 12 June 2014). ACDICT point out that only  52% of those teaching IT in years 11-12 have an IT qualification. They suggest mentoring of teachers and events where ICT graduates talk to school students. This wrong-headed approach has been tried in the past with limited success. A few enthusiastic people spend a lot of their time visiting a few schools and motivate a handful of students.

The better way to communicate with students about ICT is by using the Internet and the way to teach ICT teachers is online. In this way hundreds of thousands of students can be reached. This can be done by providing online computing courses, such as Monash University's "Creative Coding".

Teachers can be provided with online training ans support for blended team teaching. That is rather than each teacher working out what to do on their own, the teachers can work together online, to support their students. The students can use online resources and then discuss what they have learned face-to-face in the classroom.